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Dive into the research topics where Jong Sok Hahn is active.

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Featured researches published by Jong Sok Hahn.


Chemistry: A European Journal | 2010

Sterically Less‐Hindered Half‐Titanocene(IV) Phenoxides: Ancillary‐Ligand Effect on Mono‐, Bis‐, and Tris(2‐Alkyl‐/arylphenoxy) Titanium(IV) Chloride Complexes

Tae-Jin Kim; Sung-Kwan Kim; Beom‐Jun Kim; Ho-Jin Son; Jong Sok Hahn; Minserk Cheong; Mariusz P. Mitoraj; Monika Srebro; Łukasz Piękoś; Artur Michalak; Sang Ook Kang

A series of mono-, bis-, and tris(phenoxy)-titanium(IV) chlorides of the type [Cp*Ti(2-R-PhO)(n)Cl(3-n)] (n=1-3; Cp*=pentamethylcyclopentadienyl) was prepared, in which R=Me, iPr, tBu, and Ph. The formation of each mono-, bis-, and tris(2-alkyl-/arylphenoxy) series was authenticated by structural studies on representative examples of the phenyl series including [Cp*Ti(2-Ph-PhO)Cl(2)] (1 PhCl2), [Cp*Ti(2-Ph-PhO)(2)Cl] (2 PhCl), and [Cp*Ti(2-Ph-PhO)(3)] (3 Ph). The metal-coordination geometry of each compound is best described as pseudotetrahedral with the Cp* ring and the 2-Ph-PhO and chloride ligands occupying three leg positions in a piano-stool geometry. The mean Ti-O distances, observed with an increasing number of 2-Ph-PhO groups, are 1.784(3), 1.802(4), and 1.799(3) A for 1 PhCl2, 2 PhCl, and 3 Ph, respectively. All four alkyl/aryl series with Me, iPr, tBu, and Ph substituents were tested for ethylene homopolymerization after activation with Ph(3)C(+)[B(C(6)F(5))(4)](-) and modified methyaluminoxane (7% aluminum in isopar E; mMAO-7) at 140 degrees C. The phenyl series showed much higher catalytic activity, which ranged from 43.2 and 65.4 kg (mmol of Ti x h)(-1), than the Me, iPr, and tBu series (19.2 and 36.6 kg (mmol of Ti x h)(-1)). Among the phenyl series, the bis(phenoxide) complex of 2 PhCl showed the highest activity of 65.4 kg (mmol of Ti x h)(-1). Therefore, the catalyst precursors of the phenyl series were examined by treating them with a variety of alkylating reagents, such as trimethylaluminum (TMA), triisobutylaluminum (TIBA), and methylaluminoxane (MAO). In all cases, 2 PhCl produced the most catalytically active alkylated species, [Cp*Ti(2-Ph--PhO)MeCl]. This enhancement was further supported by DFT calculations based on the simplified model with TMA.


Macromolecules | 2009

Half-Metallocene Titanium(IV) Phenyl Phenoxide for High Temperature Olefin Polymerization: Ortho-Substituent Effect at Ancillary o-Phenoxy Ligand for Enhanced Catalytic Performance

Tae-Jin Kim; Sung-Kwan Kim; Beom‐Jun Kim; Jong Sok Hahn; Myungahn Ok; Jong Hee Song; Daeho Shin; Jaejung Ko; Minserk Cheong; Jin Kim; Hoshik Won; Mariusz P. Mitoraj; Monika Srebro; Artur Michalak; Sang Ook Kang


Archive | 2007

Bis-arylaryloxy catalytic system for producing ethylene homopolymers or ethylene copolymers with alpha-olefins

Myung Ahn Ok; Jong Sok Hahn; Dae Ho Shin; Sang Ook Kang; Tae Jin Kim


Archive | 2005

Arylphenoxy catalyst system for producing ethylene homopolymer or copolymers of ethylene and α-olefins

Tae Woo Woo; Myung Ahn Ok; Jong Sok Hahn; Mal Ou Lee; Sang Ook Kang; Sung Bo Ko; Tae Jin Kim; Sung Kwan Kim


Archive | 2008

ETHYLENE COPOLYMER HAVING MULTIPLE PITCH MOLECULAR WEIGHT DISTRIBUTION AND THE METHOD OF PREPARING THE SAME

Choon Sik Shim; Hyeong Taek Ham; Sung Seok Chae; Dae Ho Shin; Seung Bum Kwon; Jong Sok Hahn; Myung Ahn Ok


Archive | 2006

Homogeneous catalyst system for producing ethylene homopolymer or ethylene copolymers with alpha-olefins

Tae Woo Woo; Myung Ahn Ok; Jong Sok Hahn; Sang Ook Kang; Jae Ho Jung


Polyhedron | 2014

Synthesis and X-ray crystal structure of [Me2Si(C5Me2H2)(tBuN)]MCl2 (M = Ti, Zr) bearing a 3,4-dimethylcyclopentadienyl ring: Investigation of the substitution effect on the cyclopentadienyl (Cp) ring for catalytic performance in ethylene/1-octene (co)polymerization

Chun Ji Wu; Saira Nayab; Hyun Yul Woo; Jong Sok Hahn; Ho Seong Lee; Sang Ook Kang; Hyosun Lee


Archive | 2010

Ethylene alpha olefin polymer formed by use of metallocene catalyst

Hwan Kyu Jung; Young Wook Kim; Byoung Tak Yim; Ho Seong Lee; Myung Ahn Ok; Jong Sok Hahn; Dong Cheol Shin


European Journal of Inorganic Chemistry | 2008

Structure–Catalytic Activity Relationship in Bridging Silacycloalkyl Ring Conformations of Constrained Geometry Titanium Complexes

Eugene Kang; Sung-Kwan Kim; Tae-Jin Kim; Jae-Ho Chung; Jong Sok Hahn; Jaejung Ko; Myungahn Ok; Minserk Cheong; Sang Ook Kang


Archive | 2011

SYSTÈME DE CATALYSEUR DE MÉTAUX DE TRANSITION PRÉSENTANT UNE EXCELLENTE COPOLYMÉRISATION ET PROCÉDÉ DE PRÉPARATION D'UN HOMOPOLYMÈRE D'ÉTHYLÈNE OU D'UN COPOLYMÈRE D'ÉTHYLÈNE ET D'α-OLÉFINE UTILISANT CE SYSTÈME

Ho Seong Lee; 이호성; Jong Sok Hahn; 한정석; Dong Cheol Shin; 신동철; Hyo Sun Lee; 이효선; Chun Ji Wu; 오춘희

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